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Evaluation of gas phase air cleaners for indoor environmental applications

机译:评估室内环境应用的气相空气净化器

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摘要

While granular activated carbon (GAC) filters have been used extensively for removal of contaminants from industrial gas streams, little research has been done on their adsorption capacity for indoor environmental purposes where ventilation systems are used to remove volatile organic compounds (VOC) contaminants and may allow higher air recirculation. This research investigates the performance of GAC filters for indoor environments by challenging them with various VOCs and subsequently measuring their removal efficiencies and breakthrough times. A small environmental, closed-loop, dynamic test chamber was designed, constructed and used to measure the performance of eight different GAC filter samples when they were exposed to cyclohexane, ethyl acetate and toluene at different humidity levels. Three of the filters were composed of virgin activated carbon with granules of different sizes and/or shapes. The remainder filters were impregnated with either phosphoric acid or potassium hydroxide. The breakthrough times and removal efficiencies of the filters were analyzed. Within the concentration range examined and at 50% relative humidity (RH), toluene exhibited the highest adsorption capacity on the filters, followed by ethyl acetate and cyclohexane. At 50% RH, the virgin filters were 25% more efficient in adsorbing the VOCs than the impregnated ones. For toluene, the 50% breakthrough times of filters 1A, 1B and 1C were 4, 0.13 and 0.03 hours, respectively, and the 80% breakthrough times were 5.60, 1.03 and 0.50 hours. respectively. The effects of RH on adsorption of soluble (ethyl acetate) and insoluble (cyclohexane and toluene) VOCs on the performance of GAC filters were also investigated. The presence of water vapor in the chamber had little effect on the adsorption capacity of the toluene until about 50% RH. At 50% RH and above, an increase of 16.5% in adsorption capacity of ethyl acetate occurred, while the adsorption capacity of cyclohexane and toluene rapidly decreased. The 80% breakthrough times of filters IA, 2A and 3A for toluene decreased on average, up to 33%. 38% and 25%, respectively, when the RH increased from 30% to 70%. Therefore, competitive adsorption of VOCs with water vapor molecules shortened the breakthrough times of the filters for toluene and cyclohexane as the RH level increased.
机译:尽管颗粒状活性炭(GAC)过滤器已广泛用于去除工业气流中的污染物,但对于室内环境的吸附能力的研究很少,在这些环境中,通风系统用于去除挥发性有机化合物(VOC)污染物,并且可能允许更高的空气再循环。这项研究通过用各种VOC挑战GAC过滤器,然后测量其去除效率和突破时间,来研究GAC过滤器在室内环境下的性能。设计,构建了一个小型的环境闭环动态测试室,用于测量八个不同GAC过滤器样品在不同湿度下暴露于环己烷,乙酸乙酯和甲苯时的性能。其中三个过滤器由纯净的活性炭组成,具有不同大小和/或形状的颗粒。其余的过滤器用磷酸或氢氧化钾浸渍。分析了过滤器的穿透时间和去除效率。在所检查的浓度范围内和50%的相对湿度(RH)下,甲苯在过滤器上的吸附能力最高,其次是乙酸乙酯和环己烷。在相对湿度为50%的条件下,原始过滤器的吸附VOC效率比浸渍过滤器高25%。对于甲苯,过滤器1A,1B和1C的50%穿透时间分别为4、0.13和0.03小时,而80%的穿透时间为5.60、1.03和0.50小时。分别。还研究了相对湿度对可溶性(乙酸乙酯)和不溶性(环己烷和甲苯)VOCs吸附对GAC过滤器性能的影响。直到约50%RH,室中水蒸气的存在对甲苯的吸附能力几乎没有影响。在相对湿度50%及以上时,乙酸乙酯的吸附容量增加了16.5%,而环己烷和甲苯的吸附容量迅速降低。过滤器1A,2A和3A对甲苯的80%穿透时间平均减少,最多降低33%。当相对湿度从30%增加到70%时,分别为38%和25%。因此,随着RH水平的提高,VOC与水蒸气分子的竞争性吸附缩短了过滤器对甲苯和环己烷的穿透时间。

著录项

  • 作者

    Bolourani Golnoush;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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